Literature DB >> 1657942

Decreased activities of ubiquinol:ferricytochrome c oxidoreductase (complex III) and ferrocytochrome c:oxygen oxidoreductase (complex IV) in liver mitochondria from rats with hydroxycobalamin[c-lactam]-induced methylmalonic aciduria.

S Krahenbuhl1, M Chang, E P Brass, C L Hoppel.   

Abstract

Rats treated with hydroxycobalamin[c-lactam] (HCCL), a cobalamin analogue that induces methylmalonic aciduria, have increased hepatic mitochondrial content and increased oxidative metabolism of pyruvate and palmitate per hepatocyte. The present studies were undertaken to characterize oxidative metabolism in isolated liver mitochondria from rats treated with HCCL. After 5-6 weeks, state 3 oxidation rates for diverse substrates are reduced in mitochondria from HCCL-treated rats. Similar reductions of mitochondrial oxidation rates are obtained with dinitrophenol-uncoupled mitochondria excluding defective phosphorylation as a cause for the observed decrease in mitochondrial oxidation. The activities of mitochondrial oxidases are reduced in HCCL-treated rats and demonstrate a defect in complex IV. Investigation of the complexes of the respiratory chain reveals a 32% decrease of ubiquinol:ferricytochrome c oxidoreductase (complex III) activity and a 72% decrease of ferrocytochrome c:oxygen oxidoreductase (complex IV) activity in mitochondria from 5-6-week HCCL-treated rats as compared with controls. Liver mitochondria from HCCL-treated rats also demonstrate decreased cytochrome content per mg of mitochondrial protein (25% decrease of cytochrome b and 52% decrease of cytochrome a + a3 as compared with control rats). The HCCL-treated rat represents an animal model for the study of the consequences of respiratory chain defects in liver mitochondria.

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Year:  1991        PMID: 1657942

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  51 in total

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2.  Cardiolipin as an oxidative target in cardiac mitochondria in the aged rat.

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3.  Mitochondrial reactive oxygen species production and respiratory complex activity in rats with pressure overload-induced heart failure.

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4.  Cypermethrin-induced nigrostriatal dopaminergic neurodegeneration alters the mitochondrial function: a proteomics study.

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5.  Increased urine methylmalonic acid excretion in infants with apnoeas.

Authors:  R Artuch; M Calvo; A Ribes; F Camarasa; M A Vilaseca
Journal:  J Inherit Metab Dis       Date:  1998-02       Impact factor: 4.982

6.  Complex I function is defective in complex IV-deficient Caenorhabditis elegans.

Authors:  Wichit Suthammarak; Yu-Ying Yang; Phil G Morgan; Margaret M Sedensky
Journal:  J Biol Chem       Date:  2008-12-12       Impact factor: 5.157

7.  A new link to mitochondrial impairment in tauopathies.

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Review 8.  Anesthetic considerations in patients with mitochondrial defects.

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9.  Translation rates of isolated liver mitochondria under conditions of hepatic mitochondrial proliferation.

Authors:  E P Brass
Journal:  Biochem J       Date:  1992-11-15       Impact factor: 3.857

10.  Cell cycle re-entry and mitochondrial defects in myc-mediated hypertrophic cardiomyopathy and heart failure.

Authors:  Hyoung-gon Lee; Qun Chen; Julie A Wolfram; Sandy L Richardson; Anna Liner; Sandra L Siedlak; Xiongwei Zhu; Nicholas P Ziats; Hisashi Fujioka; Dean W Felsher; Rudy J Castellani; Maria L Valencik; John A McDonald; Brian D Hoit; Edward J Lesnefsky; Mark A Smith
Journal:  PLoS One       Date:  2009-09-25       Impact factor: 3.240

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